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Published on: October 4, 2024
Selective enrichment of founding reproductive microbiomes allows extensive vertical transmission in a fungus-farming
Veronica M Sinotte1,2, Justinn Renelies-Hamilton1, Sergio Andreu-Sánchez1,3
1Section for Ecology and Evolution, Department of Biology, University of Copenhagen, 2100 Copenhagen East, Denmark.
Abstract:
Mutualistic coevolution can be mediated by vertical transmission of symbionts between host generations. Termites host complex gut bacterial communities with evolutionary histories indicative of mixed-mode transmission. Here, we document that vertical transmission of gut bacterial strains is congruent across parent to offspring colonies in four pedigrees of the fungus-farming termite Macrotermes natalensis. We show that 44% of the offspring colony microbiome, including more than 80 bacterial genera and pedigree-specific strains, are consistently inherited. We go on to demonstrate that this is achieved because colony-founding reproductives are selectively enriched with a set of non-random, environmentally sensitive and termite-specific gut microbes from their colonies of origin. These symbionts transfer to offspring colony workers with high fidelity, after which priority effects appear to influence the composition of the establishing microbiome. Termite reproductives thus secure transmission of complex communities of specific, co-evolved microbes that are critical to their offspring colonies. Extensive yet imperfect inheritance implies that the maturing colony benefits from acquiring environmental microbes to complement combinations of termite, fungus and vertically transmitted microbes; a mode of transmission that is emerging as a prevailing strategy for hosts to assemble complex adaptive microbiomes.
Insights
Termite reproductives transmit essential gut microbes to offspring colonies, ensuring survival. This vertical transmission of bacteria enriches the developing microbiome, crucial for host-microbe coevolution.
Area of Science:
- Microbiology
- Evolutionary Biology
- Ecology
Background:
- Mutualistic coevolution is often facilitated by vertical symbiont transmission.
- Termites harbor complex gut bacterial communities with evidence of mixed-mode transmission.
Purpose of the Study:
- To investigate vertical transmission of gut bacteria in fungus-farming termites (Macrotermes natalensis).
- To identify the mechanisms and extent of symbiont inheritance from parent to offspring colonies.
Main Methods:
- Analysis of bacterial communities in parent and offspring colonies across four pedigrees.
- Selective enrichment and transfer of gut microbes by colony-founding reproductives.
- Investigation of priority effects on microbiome composition.
Main Results:
- 44% of the offspring colony microbiome, including over 80 bacterial genera and specific strains, were consistently inherited vertically.
- Colony-founding reproductives selectively acquire and transfer specific gut microbes.
- Priority effects influence the establishment of the offspring microbiome.
Conclusions:
- Termite reproductives ensure the transmission of critical, co-evolved microbial communities to new colonies.
- Imperfect vertical inheritance allows for the incorporation of environmental microbes, contributing to adaptive microbiomes.
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